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首页> 外文期刊>Journal of combustion >Effects of Electric Field on the SHS Flame Propagation of the Si-C System, Examined by the Use of the Heterogeneous Theory
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Effects of Electric Field on the SHS Flame Propagation of the Si-C System, Examined by the Use of the Heterogeneous Theory

机译:电场对Si-C系统SHS火焰传播的影响(使用异质理论检验)

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摘要

Relevant to the self-propagating high-temperature synthesis (SHS) process, an analytical study has been conducted to investigate the effects of electric field on the combustion behavior because the electric field is indispensable for systems with weak exothermic reactions to sustain flame propagation. In the present study, use has been made of the heterogeneous theory which can satisfactorily account for the premixed mode of the bulk flame propagation supported by the nonpremixed mode of particle consumption. It has been confirmed that, even for the SHS flame propagation under electric field, being well recognized to be facilitated, there exists a limit of flammability, due to heat loss, as is the case for the usual SHS flame propagation. Since the heat loss is closely related to the representative sizes of particles and compacted specimen, this identification provides useful insight into manipulating the SHS flame propagation under electric field, by presenting appropriate combinations of those sizes. A fair degree of agreement has been demonstrated through conducting an experimental comparison, as far as the trend and the approximate magnitude are concerned, suggesting that an essential feature has been captured by the present study.
机译:与自蔓延高温合成(SHS)过程相关,已经进行了分析研究,以研究电场对燃烧行为的影响,因为电场对于维持火焰传播的弱放热反应系统是必不可少的。在本研究中,已经使用了非均质理论,该理论可以令人满意地解释由颗粒消耗的非预混合模式支持的块状火焰传播的预混合模式。已经证实,即使对于在电场下的SHS火焰传播,也被公认易于促进,但是由于热量的损失,与通常的SHS火焰传播一样,存在可燃性的极限。由于热量的损失与颗粒和压实样品的代表性尺寸密切相关,因此通过提供适当的尺寸组合,这种识别可为在电场下控制SHS火焰传播提供有用的见识。通过进行实验比较已经证明了相当程度的一致性,就趋势和近似幅度而言,这表明本研究已经捕获了一个基本特征。

著录项

  • 来源
    《Journal of combustion》 |2013年第2013期|752068.1-752068.8|共8页
  • 作者

    Atsushi Makino;

  • 作者单位

    Institute of Aeronautical Technology, Japan Aerospace Exploration Agency, 7-44-1 Jindaiji-Higashi, Chofu, Tokyo, Japan;

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  • 正文语种 eng
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